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伊特鲁里亚鼩鼱(Suncus etruscus)和普通欧洲白齿鼩鼱(Crocidura russula)(食虫目:鼩鼱科)骨骼肌的收缩参数、肌球蛋白组成和代谢酶

Contraction parameters, myosin composition and metabolic enzymes of the skeletal muscles of the etruscan shrew Suncus etruscus and of the common European white-toothed shrew Crocidura russula (Insectivora: soricidae).

作者信息

Peters T, Kubis H P, Wetzel P, Sender S, Asmussen G, Fons R, Jürgens K D

机构信息

Zentrum Physiologie, Medizinische Hochschule, D 30623 Hannover, Germany.

出版信息

J Exp Biol. 1999 Sep;202(Pt 18):2461-73. doi: 10.1242/jeb.202.18.2461.

Abstract

In the Etruscan shrew, the isometric twitch contraction times of extensor digitorum longus (EDL) and soleus muscles are shorter than in any other mammal, allowing these muscles to contract at outstandingly high contraction frequencies. This species has the highest mass-specific metabolic rate of all mammals and requires fast skeletal muscles not only for locomotion but also for effective heat production and for an extremely high ventilation rate. No differences could be detected in the fibre type pattern, the myosin heavy and light chain composition, or in the activity of the metabolic enzymes lactate dehydrogenase and citrate synthase of the two limb muscles, the EDL and the soleus, which in larger mammalian species exhibit distinct differences in contractile proteins and metabolic enzymes. All properties determined in EDL and soleus muscles of Suncus etruscus, as well as in the larger Crocidura russula, are typical for fast-oxidative fibres, and the same holds for several other skeletal muscles including the diaphragm muscle of S. etruscus. Nevertheless, the EDL and soleus muscles showed different mechanical properties in the two shrew species. Relaxation times and, in C. russula, time to peak force are shorter in the EDL than in the soleus muscle. This is in accordance with the time course of the Ca(2+) transients in these muscles. Such a result could be due to different parvalbumin concentrations, to a different volume fraction of the sarcoplasmic reticulum in the two muscles or to different Ca(2+)-ATPase activities. Alternatively, the lower content of cytosolic creatine kinase (CK) in the soleus compared with the EDL muscle could indicate that the observed difference in contraction times between these shrew muscles is due to the CK-controlled activity of their sarcoplasmic reticulum Ca(2+)-ATPase.

摘要

在伊特鲁里亚鼩鼱中,趾长伸肌(EDL)和比目鱼肌的等长收缩时间比其他任何哺乳动物都短,这使得这些肌肉能够以极高的收缩频率进行收缩。该物种具有所有哺乳动物中最高的质量特异性代谢率,不仅需要快速的骨骼肌来进行运动,还需要其进行有效的产热以及维持极高的通气率。在两种肢体肌肉(EDL和比目鱼肌)中,未检测到纤维类型模式、肌球蛋白重链和轻链组成以及代谢酶乳酸脱氢酶和柠檬酸合酶的活性存在差异,而在较大的哺乳动物物种中,这些收缩蛋白和代谢酶表现出明显差异。在伊特鲁里亚鼩鼱的EDL和比目鱼肌以及较大的褐家鼠中所测定的所有特性,对于快速氧化纤维来说都是典型的,其他几块骨骼肌包括伊特鲁里亚鼩鼱的膈肌也是如此。然而,在这两种鼩鼱物种中,EDL和比目鱼肌表现出不同的力学特性。在褐家鼠中,EDL的松弛时间以及达到峰值力的时间比目鱼肌短。这与这些肌肉中Ca(2+)瞬变的时间进程一致。这样的结果可能是由于两种肌肉中不同的小清蛋白浓度、肌浆网的不同体积分数或不同的Ca(2+)-ATP酶活性所致。或者,比目鱼肌中胞质肌酸激酶(CK)的含量低于EDL肌肉,这可能表明在这些鼩鼱肌肉中观察到的收缩时间差异是由于CK对其肌浆网Ca(2+)-ATP酶活性的控制。

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